首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Targeted gene disruption reveals a leptin-independent role for the mouse beta3-adrenoceptor in the regulation of body composition.
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Targeted gene disruption reveals a leptin-independent role for the mouse beta3-adrenoceptor in the regulation of body composition.

机译:靶向基因破坏揭示了小鼠β3-肾上腺素受体在调节身体成分中的瘦素非依赖性作用。

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摘要

Targeted disruption of mouse beta3-adrenoceptor was generated by homologous recombination, and validated by an acute in vivo study showing a complete lack of effect of the beta3-adrenoceptor agonist CL 316,243 on the metabolic rate of homozygous null (-/-) mice. In brown adipose tissue, beta3-adrenoceptor disruption induced a 66 decrease (P < 0.005) in beta1-adrenoceptor mRNA level, whereas leptin mRNA remained unchanged. Chronic energy balance studies in chow-fed mice showed that in -/- mice, body fat accumulation was favored (+41, P < 0.01), with a slight increase in food intake (+6, NS). These effects were accentuated by high fat feeding: -/- mice showed increased total body fat (+56, P < 0.025) and food intake (+12, P < 0.01), and a decrease in the fat-free dry mass (-10, P < 0.05), which reflects a reduction in body protein content. Circulating leptin levels were not different in -/- and control mice regardless of diet. The significant shift to the right in the positive correlation between circulating leptin and percentage of body fat in high fat-fed -/- mice suggests that the threshold of body fat content inducing leptin secretion is higher in -/- than in control mice. Taken together, these studies demonstrate that beta3-adrenoceptor disruption creates conditions which predispose to the development of obesity.
机译:小鼠β3-肾上腺素受体的靶向破坏由同源重组产生,并通过一项急性体内研究验证,该研究显示β3-肾上腺素受体激动剂CL 316,243对纯合无效(-/-)小鼠的代谢率完全没有影响。在棕色脂肪组织中,β3-肾上腺素受体破坏导致β1-肾上腺素受体mRNA水平降低66%(P<0.005),而瘦素mRNA保持不变。对食物喂养小鼠的慢性能量平衡研究表明,在-/-小鼠中,身体脂肪积累是有利的(+41%,P<0.01),食物摄入量略有增加(+6%,NS)。高脂肪喂养加剧了这些影响:-/-小鼠表现出增加的全身脂肪(+56%,P<0.025)和食物摄入量(+12%,P<0.01),以及无脂肪干质量的减少(-10%,P<0.05),这反映了身体蛋白质含量的降低。无论饮食如何,循环瘦素水平在-/-和对照小鼠中没有差异。在高脂肪喂养的-/-小鼠中,循环瘦素与体脂百分比之间的正相关关系向右显着偏移,表明诱导瘦素分泌的体脂含量阈值在-/-中高于对照小鼠。综上所述,这些研究表明,β3-肾上腺素受体的破坏创造了导致肥胖发展的条件。

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